KINETICS OF THE PROCESS OF DRYING THE PASTE OF TITANIUM DIOXIDE IN AN ORIGINAL DRYING VORTEX APPARATUS AND OBTAINING A FINE POWDER TIO2

V. Marchevskii, Y. Grobovenko
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Abstract

The authors of the article justified the physical model of the drying process of titanium dioxide paste and the drying of TiO2 fine powder to a residual moisture content of 0.3%, on the basis of which a mathematical model of the drying process is developed. The result of solving the mathematical model is the kinetic parameters of the drying process, with the help of which the drying apparatus of the vortex type was designed, designed and manufactured. The results of the simulation were verified by experimental studies of the drying and drying of TiO2 paste, and experimental graphical dependences of the drying rate and product temperature on the drying time were obtained. The obtained dependences are analyzed and the necessary initial parameters of the coolant are established, which allow increasing the drying rate and reducing energy costs for the drying process. As a result of the experiments, the fine powder of titanium dioxide fits the requirements of state standards and possesses the necessary mechanical and consumer properties. Bibl. 10, Fig. 7.
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在原始干燥涡旋装置中干燥二氧化钛糊状并获得细粉末二氧化钛的过程动力学
本文作者建立了二氧化钛膏体干燥过程的物理模型和二氧化钛细粉干燥至残余水分含量0.3%的物理模型,并在此基础上建立了干燥过程的数学模型。求解数学模型的结果是干燥过程的动力学参数,并以此为依据设计、设计和制造了涡旋式干燥装置。通过对TiO2膏体干燥和干燥的实验研究,验证了模拟结果,并得到了干燥速率和产物温度随干燥时间的实验图形关系。对得到的依赖关系进行了分析,并确定了冷却剂的必要初始参数,从而提高了干燥速度,降低了干燥过程的能源成本。实验结果表明,制备的二氧化钛细粉符合国家标准要求,具有必要的力学性能和使用性能。圣经第十章,图七章。
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